1415994-35-2Relevant academic research and scientific papers
Discovery and Optimization of Thiazolidinyl and Pyrrolidinyl Derivatives as Inhaled PDE4 Inhibitors for Respiratory Diseases
Carzaniga, Laura,Amari, Gabriele,Rizzi, Andrea,Capaldi, Carmelida,De Fanti, Renato,Ghidini, Eleonora,Villetti, Gino,Carnini, Chiara,Moretto, Nadia,Facchinetti, Fabrizio,Caruso, Paola,Marchini, Gessica,Battipaglia, Loredana,Patacchini, Riccardo,Cenacchi, Valentina,Volta, Roberta,Amadei, Francesco,Pappani, Alice,Capacchi, Silvia,Bagnacani, Valentina,Delcanale, Maurizio,Puccini, Paola,Catinella, Silvia,Civelli, Maurizio,Armani, Elisabetta
, p. 10026 - 10046 (2018/01/10)
Phosphodiesterase 4 (PDE4) is a key cAMP-metabolizing enzyme involved in the pathogenesis of inflammatory disease, and its pharmacological inhibition has been shown to exert therapeutic efficacy in chronic obstructive pulmonary disease (COPD). Herein, we describe a drug discovery program aiming at the identification of novel classes of potent PDE4 inhibitors suitable for pulmonary administration. Starting from a previous series of benzoic acid esters, we explored the chemical space in the solvent-exposed region of the enzyme catalytic binding pocket. Extensive structural modifications led to the discovery of a number of heterocycloalkyl esters as potent in vitro PDE4 inhibitors. (S?,S??)-18e and (S?,S??)-22e, in particular, exhibited optimal in vitro ADME and pharmacokinetics properties and dose-dependently counteracted acute lung eosinophilia in an experimental animal model. The optimal biological profile as well as the excellent solid-state properties suggest that both compounds have the potential to be effective topical agents for treating respiratory inflammatory diseases.
BENZHYDRYL DERIVATIVES FOR THE TREATMENT OF RESPIRATORY DISEASES
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Page/Page column 39; 40; 41, (2015/06/18)
The invention relates to novel compounds of formula (I) having a benzhydryl structure which are both phosphodiesterase 4 (PDE4) enzyme inhibitors and muscarinic M3 receptor antagonists, methods of preparing such compounds, compositions containing them and therapeutic use thereof.
BENZHYDRYL DERIVATIVES
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Paragraph 0249; 0253; 0254; 0255, (2015/06/17)
Compounds having a benzhydryl structure represented by formula (I) described herein are both phosphodiesterase 4 (PDE4) enzyme inhibitors and muscarinic M3 receptor antagonists and are useful for treating diseases of the respiratory tract.
PHENYLETHYLPYRIDINE DERIVATIVES AS PDE4-INHIBITORS
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Page/Page column 61; 62; 63, (2014/06/24)
The invention relates to novel compounds which are inhibitors of the phosphodiesterase 4 (PDE4) enzyme and muscarinic M3 receptor antagonists, methods of preparing such compounds, compositions containing them and therapeutic use thereof.
PHENYLETHYLPYRIDINE DERIVATIVES AS PDE4-INHIBITORS
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Page/Page column 63; 64; 65, (2014/06/24)
The invention relates to novel compounds which are both inhibitors of the phosphodiesterase 4 (PDE4) enzyme and muscarinic M3 receptor antagonists, methods of preparing such compounds, compositions containing them and therapeutic use thereof.
NOVEL COMPOUNDS
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Page/Page column 30, (2014/06/23)
Compounds of formula (I) defined herein are both inhibitors of the phosphodiesterase 4 (PDE4) enzyme and muscarinic M3 receptor antagonists and are useful for the prevention and/or treatment of a disease of the respiratory tract characterized by airway obstruction.
DERIVATIVES OF 1-PHENYL-2-PYRIDINYL ALKYL ALCOHOLS AS PHOSPHODIESTERASE INHIBITORS
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Page/Page column 41, (2013/02/28)
Derivatives of 1-phenyl-2-pyridinyl alkyl alcohols are useful as inhibitors of the phosphodiesterase 4 (PDE4) enzyme and the treatment of certain conditions such as COPD.
DERIVATIVES OF 1-PHENYL-2-PYRIDINYL ALKYL ALCOHOLS AS PHOSPHODIESTERASE INHIBITORS
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Page/Page column 97, (2013/02/27)
The invention relates to inhibitors of the phosphodiesterase 4 (PDE4) enzyme. More particularly, the invention relates to compounds that are derivatives of 1-phenyl-2-pyridinyl alkyl alcohols of formula (I), methods of preparing such compounds, compositio
